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University of North Carolina at Charlotte | Charlotte, North Carolina | United States | about 15 hours ago
. Preferred Education, Knowledge, Skills and Experience Experience in High Performance Computing related technologies such as schedulers, parallel computing, storage systems, or scientific applications
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. Description: Theoretical research and computer simulation are carried out with emphasis on observations of space plasmas. Specific interest areas include (1) nonlinear phenomena in unstable collisionless
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of approximately 5,000 students in occupational/technical programs and university-parallel/college transfer programs. This is a Full-time Program Specialist position for the Public Safety programs including
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be found at https://datascience.cancer.gov/collaborations/nci-department-energy-collaborations ; https://www.cincinnatichildrens.org/research/divisions/d/decoding-mental-health/programs/mental-health
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students in occupational/technical programs and university-parallel/college transfer programs. Respond to information technology work requests primarily involving routine user assistance and support for
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numbers of samples in parallel. Prior experience handling and processing 96-sample assays, such as 96-well PCR plates or 96-well screening assays. Interest in liquid-handler automation of wet-lab workflows
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in parallel with the remarkable growth of our hospital-based affiliates as well as the city and county of Denver. Our work is value driven and focused on scientific investigation, lifelong learning and
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unit. Job openings are posted for a minimum of ten calendar days. The review and selection process may begin as early as the eleventh day after posting. This opening may be removed from posting boards
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[map ] Subject Areas: Mathematics; Physics; Astrophysics; High Performance Computing; Machine Learning Appl Deadline: 2025/12/16 04:59 AM UnitedKingdomTime (posted 2025/11/20 05:00 AM UnitedKingdomTime
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computational approaches, including in vivo Massively Parallel Reporter Assays (MPRAs), to define the sequence basis and functional consequences of enhancer activity and to expand MPRA-based approaches to other